首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Propagation of truncated Gaussian beams and their application in modeling sharp-edge diffraction
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Propagation of truncated Gaussian beams and their application in modeling sharp-edge diffraction

机译:截断高斯光束的传播及其在锐边衍射建模中的应用

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The two new kinds of truncated Gaussian beams, known as the half and quarter Gaussian beams, are defined as the product of the fundamental Gaussian beam with the Heaviside unit step function. Using the generalized Collins integral, the exact analytical propagation formulas are derived for the truncated Gaussian beams through paraxial optical systems. Combined with the Gaussian beam decomposition method, the truncated Gaussian beams are used to represent the sharp edges of a field after a hard aperture. The modified Gaussian beam decomposition method presented in this work enables the calculation of the diffraction of a given field from a hard aperture with an arbitrary shape. This solves one of the limitations of the conventional Gaussian beam decomposition method, which is its inability to accurately model the diffraction of fields with sharp edges, especially in the near field. The validity and accuracy of the proposed method are demonstrated using a few exemplary diffraction calculations. (c) 2019 Optical Society of America.
机译:这两种新型截短的高斯光束,称为半和四分之一的高斯光束,被定义为具有沉重的高斯梁的产品,具有沉重的单位阶段阶段功能。使用广义的柯林斯积分,通过近轴光学系统导出精确的分析传播公式。结合高斯光束分解方法,截短的高斯光束用于表示硬孔后的场的锋利边缘。在该工作中提出的修改的高斯光束分解方法使得能够从具有任意形状的硬孔计算给定场的衍射。这解决了传统的高斯光束分解方法的局限之一,这是其无法准确地模拟具有锋利边缘的田地的衍射,尤其是在近场中。使用少数示例性衍射计算来证明所提出的方法的有效性和准确性。 (c)2019年光学学会。

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